英國(guó)倫敦大學(xué)學(xué)院2024年招聘博士后(腦血管生物學(xué)與腦癌生物學(xué))
倫敦大學(xué)學(xué)院(University College London,簡(jiǎn)稱:UCL),位于英國(guó)倫敦,是一所公立研究型大學(xué),也是第一所在倫敦成立的大學(xué)。學(xué)校是羅素大學(xué)集團(tuán)和歐洲研究型大學(xué)聯(lián)盟的成員,被譽(yù)為金三角名校之一。
Research Fellow in Brain Vascular Biology Brain Cancer Biology
Employer
University College London (UCL)
Location
England, London
Salary
£43124 - £51610 per annum + Inclusive of London Allowance
Closing date
6 Nov 2024
The Group of CNS Angiogenesis and Neurovascular Link / Brain Vasculature and Perivascular Niche headed by neurosurgeon-neuroscientist Associate Professor Dr Thomas Wälchli is one of the laboratories of the University College London (UCL) Cancer Institute in the Department of Oncology of the University College London (UCL).
Brain Vascular Biology and Brain Cancer Biology | UCL Cancer Institute - UCL - University College London
The overarching vision of the research of Associate Professor Dr Thomas Wälchli, MD-PhD, FMH neurosurgery is to understand how the brain vasculature is regulated during brain development, in the adult healthy brain, and in various vascular-dependent brain diseases such as brain tumours and brain vascular malformations. The UCL Cancer Institute is a £40 million investment in central London based at University College London (UCL), one of the world's top universities and a founding member of the Francis Crick Institute. The Institute draws together over 400 scientists working together to develop world-class basic and translational cancer research.
About the role
The Group of Brain Vasculature and Perivascular Niche focuses on vascular growth and the development of blood vessels (angiogenesis) in the brain, including endothelial cells and perivascular cells of the neurovascular unit/perivascular niche, and on brain vascular heterogeneity in development, health and disease: The main aims are: i) to understand the cellular and molecular underpinnings that govern the growth of the developing, adult, and diseased human brain vasculature at single-cell resolution, ii) to uncover the single-cell transcriptomic, genomic and epigenomic landscapes and spatial biology of the developing, adult and diseased human brain vasculature, iii) to elucidate how developmental programs regulate vascular growth/angiogenesis in the human brain tumour vasculature (patho-fetal axis / onco-fetal axis), iv) to unravel the onco-fetal programs of vascular growth/angiogenesis and immunosuppression/immunomodulation, and v) to translate these fundamental insights about the onco-fetal axis in the human brain (tumour) vasculature into clinical settings with the ultimate goal to identify novel therapeutic strategies for human brain tumours (and for other vascular-dependent diseases such as human brain vascular malformations).
The post is funded for until 31st October 2025 in the first instance, with possibility of extension.
Interviews are expected to take place on Monday the 11th of November 2024.
About you
The successful candidate is be expected to be a driving force of these highly novel, original and competitive projects, to produce independent and original research in this area, to develop and apply new concepts and to have a creative approach to problem solving.
Appointment at Grade 7 is dependent upon having been awarded a PhD; if this is not the case, initial appointment will be at research assistant Grade 6B with payment at Grade 7 being backdated to the date of final submission of the PhD thesis.
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